First principles molecular dynamics simulation protocol is established using revised functional of Perdew-Burke-Ernzerhof (revPBE) in conjunction with Grimme's third generation of dispersion (D3) correction to describe the properties of water at ambient conditions. This study also demonstrates the consistency of the structure of water across both isobaric (NpT) and isothermal (NVT) ensembles. Going beyond the standard structural benchmarks for liquid water, we compute properties that are connected to both local structure and mass density fluctuations that are related to concepts of solvation and hydrophobicity. We directly compare our revPBE results to the Becke-Lee-Yang-Parr (BLYP) plus Grimme dispersion corrections (D2) and both the empir...
Density functional theory (DFT) has been extensively used to model the properties of water. Albeit m...
The results of ab initio molecular dynamics simulations of liquid water and liquid water-vapor inter...
We developed the RexPoN force field for water based entirely on quantum mechanics. It predicts the p...
First principles molecular dynamics simulation protocol is established using revised functional of P...
We investigate the accuracy provided by different treatments of the exchange and correlation effects...
The accurate representation of the structural and dynamical properties of water is essential for sim...
We investigate the accuracy provided by different treatments of the exchange and correlation effects...
We present the first-principles molecular dynamics simulations of water molecules using two differen...
Water is a ubiquitous liquid that displays a wide range of anomalous properties and has a delicate s...
The first-principles description of liquid water using ab initio molecular dynamics (AIMD) based on ...
We investigate the structural properties of liquid water at near ambient conditions using first-...
Motivated by the very low diffusivity recently found in ab initio simulations of liquid water, we ha...
Developing accurate ab initio molecular dynamics (AIMD) models that capture both electronic reorgani...
Among all fluids, water has always been of special concern for scientists from a broad variety of re...
Many anomalous properties of water can be explained on the basis of the coexistence of more than one...
Density functional theory (DFT) has been extensively used to model the properties of water. Albeit m...
The results of ab initio molecular dynamics simulations of liquid water and liquid water-vapor inter...
We developed the RexPoN force field for water based entirely on quantum mechanics. It predicts the p...
First principles molecular dynamics simulation protocol is established using revised functional of P...
We investigate the accuracy provided by different treatments of the exchange and correlation effects...
The accurate representation of the structural and dynamical properties of water is essential for sim...
We investigate the accuracy provided by different treatments of the exchange and correlation effects...
We present the first-principles molecular dynamics simulations of water molecules using two differen...
Water is a ubiquitous liquid that displays a wide range of anomalous properties and has a delicate s...
The first-principles description of liquid water using ab initio molecular dynamics (AIMD) based on ...
We investigate the structural properties of liquid water at near ambient conditions using first-...
Motivated by the very low diffusivity recently found in ab initio simulations of liquid water, we ha...
Developing accurate ab initio molecular dynamics (AIMD) models that capture both electronic reorgani...
Among all fluids, water has always been of special concern for scientists from a broad variety of re...
Many anomalous properties of water can be explained on the basis of the coexistence of more than one...
Density functional theory (DFT) has been extensively used to model the properties of water. Albeit m...
The results of ab initio molecular dynamics simulations of liquid water and liquid water-vapor inter...
We developed the RexPoN force field for water based entirely on quantum mechanics. It predicts the p...